This work presents a study based on electro-optical numerical simulations of the impact of geometrical and doping parameters on main figures of merit of crystalline silicon back-contact back-junction solar cells. State-of-the-art physical models in combination with two-dimensional simulations performed by a TCAD tool have been adopted to carry out an extensive and detailed analysis of the influence of many fabrication parameters on performance. The studied design parameters are the doping level in front surface field (FSF), back surface field (BSF) and emitter, and the main geometrical parameters. A doping level value that allows the maximization of the efficiency for the three regions can be clearly identified. In particular, for BSF and e...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
This work presents a study based on electro-optical numerical simulations of the impact of geometric...
This work presents a study based on electro-optical numerical simulations of the impact of geometric...
AbstractIn this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
n this work, we performed a study of rear side geometry of a back-contact back-junction solar cell p...
n this work, we performed a study of rear side geometry of a back-contact back-junction solar cell p...
n this work, we performed a study of rear side geometry of a back-contact back-junction solar cell p...
AbstractIn this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a...
The knowledge of the loss mechanisms in industrial back-contact back-junction (BC BJ) silicon solar ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
This work presents a study based on electro-optical numerical simulations of the impact of geometric...
This work presents a study based on electro-optical numerical simulations of the impact of geometric...
AbstractIn this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
In this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a study o...
n this work, we performed a study of rear side geometry of a back-contact back-junction solar cell p...
n this work, we performed a study of rear side geometry of a back-contact back-junction solar cell p...
n this work, we performed a study of rear side geometry of a back-contact back-junction solar cell p...
AbstractIn this work, by exploiting two-dimensional (2-D) TCAD numerical simulations, we performed a...
The knowledge of the loss mechanisms in industrial back-contact back-junction (BC BJ) silicon solar ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...
The adoption of local point contacts at the back surface of high-efficiency monocrystalline silicon ...